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Predictive control of nonlinear continuous networked control systems with large time-varying transmission delays and transmission protocols

机译:具有较大时变传输时延和传输协议的非线性连续网络控制系统的预测控制

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摘要

In this paper, we consider a class of globally Lipschitz nonlinear continuous networked control systems (NCS) incorporating large time-varying transmission delays and transmission protocols of communication networks with periodic sampling. To stabilize the NCS, we propose a new predictive control design scheme with plant outputs as the only available data. With uniformly globally exponentially stable (UGES) protocols, input-to-state stability of the entire NCS is ensured by small gain theory. In particular, the predictive controller can compensate transmission delays with any finite upper bound under the constraint that the sampling periods of the plant output and the observer output are small enough as well as the constraint that the predictor is accurate enough. The scheme is applied to a benchmark example to illustrate the effectiveness of our proposed method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中,我们考虑了一类全局的Lipschitz非线性连续网络控制系统(NCS),该系统结合了较大的时变传输延迟和具有周期性采样的通信网络的传输协议。为了稳定NCS,我们提出了一种新的预测控制设计方案,其中以工厂输出作为唯一可用数据。使用统一的全局指数稳定(UGES)协议,可以通过小增益理论确保整个NCS的输入状态稳定性。特别地,在工厂输出和观察者输出的采样周期足够小的约束以及预测器足够精确的约束下,预测控制器可以用任何有限的上限来补偿传输延迟。该方案被应用于一个基准示例,以说明我们提出的方法的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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